We offer an assortment of refurbished and used Microscopes ranging from Inverted Microscopes, Compound Microscopes, Fluorescence Microscopes, Stereo/Dissecting Microscopes, and Biological Microscopes to Polarizing Microscopes. Some of our popular manufacturers include Nikon, Olympus, Zeiss, and Leica. We also feature microscope cameras, objectives and stands. Additionally, we sell a wide selection of Scanning Electron Microscopes including Hitachi and JEOL. Browse our used microscopes below.
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Specifications:
Achieve higher temperature uniformity using these baths with a built-in circulating pump. Controller simultaneously displays set point and actual temperature for easy reference. Two independent overtemperature safety features protect your critical processes. The adjustable control interrupts the heating cycle at the user-set limit, flashes a visual warning, and automatically resets.
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Description:
Specifications:
Description:
Specifications:
Features:
A revolutionary design packed with features, the AE2000 sets a new benchmark in affordable inverted microscopy.
Motic’s new AE2000 Inverted Microscope is designed for routine live cell inspection with an easy and flexible set up, ideal for University, routine-clinical, and lab environments. The model’s main applications offer superior image quality when viewing cell cultures in microbiology, living organisms and tissue culture samples.
The newly designed Binocular Ergo tubes with 360° swiveling “butterfly” design offers the most comfortable observation position, especially useful for prolonged sample viewing. The auto on/off function of the power supply extends the lifespan of the sample and light bulb and at the same time saves energy. Another added feature, a modular interchangeable illumination concept, allows for the easy transition from Halogen to LED to fulfill a wide-range of customer viewing expectations. The improved phase contrast quality of the model makes the instrument suitable for a greater range of applications that demand precision optics.
The entire microscope including optical system is manufactured now completely Lead Free, following the International RoHS regulations.
Features:
A revolutionary design packed with features, the AE2000 sets a new benchmark in affordable inverted microscopy.
Motic’s new AE2000 Inverted Microscope is designed for routine live cell inspection with an easy and flexible set up, ideal for University, routine-clinical, and lab environments. The model’s main applications offer superior image quality when viewing cell cultures in microbiology, living organisms and tissue culture samples.
The newly designed Binocular Ergo tubes with 360° swiveling “butterfly” design offers the most comfortable observation position, especially useful for prolonged sample viewing. The auto on/off function of the power supply extends the lifespan of the sample and light bulb and at the same time saves energy. Another added feature, a modular interchangeable illumination concept, allows for the easy transition from Halogen to LED to fulfill a wide-range of customer viewing expectations. The improved phase contrast quality of the model makes the instrument suitable for a greater range of applications that demand precision optics.
The entire microscope including optical system is manufactured now completely Lead Free, following the International RoHS regulations.
Features:
A revolutionary design packed with features, the AE2000 sets a new benchmark in affordable inverted microscopy.
Motic’s new AE2000 Inverted Microscope is designed for routine live cell inspection with an easy and flexible set up, ideal for University, routine-clinical, and lab environments. The model’s main applications offer superior image quality when viewing cell cultures in microbiology, living organisms and tissue culture samples.
The newly designed Binocular Ergo tubes with 360° swiveling “butterfly” design offers the most comfortable observation position, especially useful for prolonged sample viewing. The auto on/off function of the power supply extends the lifespan of the sample and light bulb and at the same time saves energy. Another added feature, a modular interchangeable illumination concept, allows for the easy transition from Halogen to LED to fulfill a wide-range of customer viewing expectations. The improved phase contrast quality of the model makes the instrument suitable for a greater range of applications that demand precision optics.
The entire microscope including optical system is manufactured now completely Lead Free, following the International RoHS regulations.
Features:
Features:
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Attune NxT Flow Cytometer continues to offer more options, increased flexibility, and software updates that further improve performance, reliability, and robustness. Since its initial unveiling, the compact system with innovative acoustic technology is moving ahead with added new functionalities and capabilities making multiparametric flow cytometry available to both new and experienced researchers. Experience the difference acoustic assisted hydrodynamic focusing technology brings to your workflow.
The 2016 Attune NxT Flow Cytometer is configured with 2 lasers (blue and violet) and has been validated and passed all tests. The Extended Fluid System (Model EFS-1) is also included.
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Additional Objectives and Configurations Available. Cameras are also available.
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The Bio-Rad ChemiDoc XRS System is Bio-Rad’s most advanced imaging system. The system is able to image chemiluminescent, fluorescent and colorimetric samples and comes complete with a compact darkroom, transilluminator and supercooled high resolution 1.44 megapixel CCD camera. The entire system is controlled by the provided Quantity One 1-D analysis software with additional controls on the compact darkroom to control focus, aperture and zoom. Consequently, the ChemiDoc XRS system is extremely flexible and can be used for imaging a diverse range of applications such as Western blotting, DNA/RNA gel electrophoresis, 2-D gel electrophoresis, densitometry, etc. The system is able to detect HRP and AP chemiluminescence, ethidium bromide, SYBR Green, green fluorescent protein, silver stain and Coomasie brilliant blue staining to name but a few that are frequently used with the above applications. The system features flat fielding technology which allows for superior uniformity and quantification. Flat-fielding is a technique that corrects for pixel-to-pixel variations by dividing the gain variations out of an image, thus flattening the relative response for each pixel.
Operation of the system is very simple. The gel or membrane is placed on the transilluminator, which is set into a drawer which can be moved in and out of the darkroom, facilitating placement of the gel or membrane. Once the gel or membrane is placed, it and the transilluminator are returned to the darkroom and the door closed. With the Epi-illumination switched on, the aperture, zoom and focus are adjusted using the touchpad on the darkroom and viewed on the computer monitor until the desired position, size and focus of the gel are achieved. To acquire the image, the appropriate light source for the gel or membrane is selected and the software is used to select an integration time. Using the Quantity One software, the image is frozen when a satisfactory image is acquired. The Quantity One 1-D image analysis software aids the user in obtaining the best images possible from the gel or membrane. The software is user-friendly and equipped with built-in quick guides and wizards to facilitate the optimization of images and printouts. The software is compatible with both Microsoft Windows and Macintosh platforms. The Quantity One 1-D software is used for analysis of 1-D electrophoresis gels, Western blotting membranes, Coomassie-stained SDS-PAGE gels, etc. whereas the PDQuest 2-D analysis software is also available and is intended to be used for comparative analysis where many 2-D gels are analyzed at once.
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With improved image quality and ergonomics, the Olympus CKX53 inverted microscope delivers stable performance and a comfortable workflow for a variety of cell culture needs, including live cell observation, cell sampling and handling, image capture, and fluorescence observation.
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